CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Exercise-induced β2-adrenergic Receptor Activation Enhances the Antileukemic Activity of Expanded γδ T-Cells via DNAM-1 Upregulation and PVR/Nectin-2 Recognition.
Exercise-induced β2-adrenergic Receptor Activation Enhances the Antileukemic Activity of Expanded γδ T-Cells via DNAM-1 Upregulation and PVR/Nectin-2 Recognition.
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运动可将细胞毒性淋巴细胞动员至血液中,这可能有助于采集并制备更优的细胞产品用于癌症治疗。Gamma-Delta(γδ)T细胞在治疗实体瘤方面已显示出前景,但仍需提高其针对血液系统恶性肿瘤的效力。在此,我们表明,人类γδ T细胞仅需20分钟分级运动即可被动员至血液中,其表面表型和转录组谱与细胞毒性、黏附、迁移和细胞因子信号传导相关。经唑来膦酸和IL2体外扩增14天后,运动动员的γδ T细胞具有与增强效应功能相关的表面表型和转录组谱,并在体外对多种血液系统肿瘤以及在荷白血病异种移植小鼠体内表现出更优的细胞毒性活性。向人体输注β1+β2激动剂异丙肾上腺素,并在运动前给予β1或β1+β2拮抗剂,揭示这些效应依赖于β2肾上腺素能受体(AR)。对扩增后γδ T细胞上的DNAM-1以及白血病靶细胞上的DNAM-1配体PVR和Nectin-2进行抗体阻断,可消除运动增强的抗白血病效应。这些发现提供了运动、β2-AR激活与制备用于过继细胞治疗血液系统恶性肿瘤的优质γδ T细胞产品之间的机制联系。
运动通过β2肾上腺素能信号将效应γδ T细胞动员至血液中,从而能够生成对血液系统恶性肿瘤具有高度细胞毒性的强效扩增γδ T细胞产品。
UNLABELLED: Exercise mobilizes cytotoxic lymphocytes to blood which may allow superior cell products to be harvested and manufactured for cancer therapy. Gamma-Delta (γδ) T-cells have shown promise for treating solid tumors, but there is a need to increase their potency against hematologic malignancies.
Here, we show that human γδ T-cells mobilized to blood in response to just 20 minutes of graded exercise have surface phenotypes and transcriptomic profiles associated with cytotoxicity, adhesion, migration, and cytokine signaling. Following 14 days ex vivo expansion with zoledronic acid and IL2, exercise mobilized γδ T-cells had surface phenotypes and transcriptomic profiles associated with enhanced effector functions and demonstrated superior cytotoxic activity against multiple hematologic tumors in vitro and in vivo in leukemia-bearing xenogeneic mice.
Infusing humans with the β1+β2-agonist isoproterenol and administering β1 or β1+β2 antagonists prior to exercise revealed these effects to be β2-adrenergic receptor (AR) dependent. Antibody blocking of DNAM-1 on expanded γδ T-cells, as well as the DNAM-1 ligands PVR and Nectin-2 on leukemic targets, abolished the enhanced antileukemic effects of exercise.
These findings provide a mechanistic link between exercise, β2-AR activation, and the manufacture of superior γδ T-cell products for adoptive cell therapy against hematologic malignancies. SIGNIFICANCE: Exercise mobilizes effector γδ T-cells to blood via β2-adrenergic signaling which allows for generation of a potent expanded γδ T-cell product that is highly cytotoxic against hematologic malignancies.
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